Professor of Theoretical Chemistry

The work of our group is primarily focused on the electron correlation problem - namely how to compute the correlation energy for an atom, molecule, or even solid, starting from a mean-field (say Hartree-Fock) description of the system. Our approach is to combine quantum chemical ideas with stochastic (Monte Carlo) techniques, which enable us to tackle problems which are very difficult to solve use standard quantum chemical techniques alone.

We are developing Quantum Monte Carlo algorithms adapted for electronic (and more generally Fermionic) problems by working in Slater determinant spaces. The central problem which is encountered is the infamous "Fermion sign problem", which results from electronic wavefunctions having both positive and negative amplitudes. Currently we are working on a novel population dynamics algorithm which propagates walkers in Slater determinant space according to a type of "stochastic cellular automaton" obeying simple rules. The movie on the home page of our research group website shows an evolving population of walkers of positive and negative sign settling on the FCI wavefunction of a nitrogen dimer in a minimal basis - an archetypal multireference system. The remarkable aspect of this dynamics is the spontaneous symmetry breaking caused by annhilation processes, allowing the exact nodal surface of the nitrogen molecule, as expressed by the CI coefficients, molecule to appear. No fixed-node approximation is applied.

Further animations of this method in action can be viewed here.

Publications

Nonmetal-metal transition in metal-molten-salt solutions
PL Silvestrelli, A Alavi, M Parrinello, D Frenkel
Phys Rev B Condens Matter
(1996)
53
Hydrogen under extreme conditions
A Alavi
Current Opinion in Solid State and Materials Science
(1996)
1
Path integrals and ab initio molecular dynamics
A Alavi
MONTE CARLO AND MOLECULAR DYNAMICS OF CONDENSED MATTER SYSTEMS
(1996)
49
Ab initio calculation of the sound velocity of dense hydrogen: Implications for models of Jupiter
A Alavi, M Parrinello, D Frenkel
Science
(1995)
269
Ab Initio molecular dynamics with excited electrons
A Alavi, J Kohanoff, M Parrinello, D Frenkel
Physical review letters
(1994)
73
The effect of molecular shape anisotropy on surface melting
A Alavi, S Chandavarkar
Surface Science
(1994)
302
Grand-canonical simulations of solvated ideal fermions. Evidence for phase separation
A Alavi, D Frenkel
Journal of Chemical Physics
(1992)
97
Anomalous diffusion in the nematic phase of thin disks.
A Alavi, D Frenkel
Physical Review A
(1992)
45
A vectorisable algorithm for calculating three-body interactions
LJ Alvarez, A Alavi, JI Siepmann
Computer Physics Communications
(1991)
62
Molecular-dynamics simulation of methane adsorbed on MgO: Evidence for a kosterlitz-thouless transition
A Alavi
Molecular Physics
(1990)
71

Research Group

Research Interest Group

Telephone number

01223 762877

Email address